Abstract:
An ultrasonic diagnosis device wherein, in order to reliably stop the movement of a display unit by a simple mechanism during transportation of the device, a display unit restraint mechanism is provided with: a fixed portion which has a receiving groove for receiving a handle main unit provided on the display unit; and a rotation portion which moves rotationally in relation to the fixed portion. When the rotation portion is rotated with the handle main unit received in the receiving groove, the upper side of the handle main unit becomes covered with a cover portion. In this state, a hook member protrudes outward from the rotation portion and is engaged with an upper end portion to serve as a strut.
Abstract:
The disclosed ultrasonic diagnosis device is provided with an attitude correction mechanism, between a tilt section and a display unit, for eliminating inclination of the display unit caused by drooping down of the end portion of an arm mechanism. The attitude correction mechanism has a shaft member and a bearing, and rotates the display unit about the normal of a display surface thereof. A prong enters a slit, thereby preventing the display unit from rotating more than necessary.
Abstract:
An organic EL panel has a light-emitting part including one or a plurality of organic EL elements over a substrate and having a sealing structure sealing the light-emitting part. The organic EL element includes an organic layer formed on a first electrode, and a second electrode formed on the organic layer. The organic EL panel includes a coating film coating the light-emitting part. A contact object is arranged on an inner surface of the sealing structure. One or a plurality of convex parts is formed on the contact object. The coating film is formed to have a thickness larger than the length of the convex part.
Abstract:
Notification is sent to an upper layer via a control device 2 (a device for managing operation buttons) provided between operation buttons “A-1”, “A-2” and the like and devices for operation input “Device A”, “Device B” and the like such as a pointing device for executing application processing. Function assignment and the like are put under management by the control device 2, so that any modification or change is not required in the OS, drivers, and applications in association with change in key assignment, which is advantageous and effective for reduction of cost and time for product development.
Abstract:
Disclosed is an ultrasonic diagnosis device which is provided with a shutter mechanism. The shutter mechanism conceals an opening portion (a passage for a rotation shaft member), which is uncovered behind an operation panel when the operation panel moves forward, so as to enhance the appearance and safety. The shutter mechanism has a pair of first shutter plates and a pair of second shutter plates, the pairs overlapping each other. Each shutter plate rotates about a predetermined rotational shaft which does not slide back and forth. Each shutter plate has a pin slot into which a slide pin is inserted. A pair of slide pins are provided on a member that slides back and forth. When the pair of slide pins move forward, the contact relationship between the pair of slide pins and a plurality of pin slots causes the pair of first shutter plates to start closing first, and subsequently the pair of second shutter plates start closing.
Abstract:
A dielectrically positive liquid crystalline media comprising: a first dielectrically positive component, component A, comprising a dielectrically neutral compound of formula I wherein the parameters have the meanings defined herein; a second dielectrically positive component, component B, comprising one or more dielectrically positive compounds having a dielectric anisotropy of more than 3; and optionally a dielectrically neutral component, component C, comprising one or more dielectrically neutral compounds having a dielectric anisotropy in the range from −1.5 to 3, are suitable for use in liquid crystal displays, especially active matrix displays, and in particular TN and to IPS displays.
Abstract:
A two-dimensional code recognition processing method for recognizing a two-dimensional code lade of a plurality of square cells arranged in accordance with predetermined layout rules. The method comprises the steps of: generating binary data from image information acquired externally in accordance with a predetermined threshold value; detecting a reference cell serving as a reference in recognizing the two-dimensional code based on the binary data generated in the binary data generating step; detecting corner cells each located in a predetermined search range with respect to the reference cell detected in the reference cell detecting step, on the basis of the binary data generated in the binary data generating step; and detecting code data assigned to the two-dimensional code existing inside an area of a code part enclosed by the reference cell and by the corner cells on the basis of the binary data generated in the binary data generating step.
Abstract:
The invention relates to a liquid-crystalline medium based on a mixture of polar compounds having negative dielectric anisotropy, which contains at least one compound of formula I wherein R1 and R2 are independently of each other an alkyl, alkoxy or alkenyl group with 1 to 12 C atoms, it also being possible for one or more CH2 groups in these radicals to be replaced, in each case independently of one another, by —O—, —CH═CH—, —CO—, —OCO— or —COO— in such a manner that oxygen atoms are not linked directly to one another, Z is OCH2 or CH2O, and m is 0 or 1.
Abstract:
The invention relates to an electro-optical liquid-crystal display having a realignment layer for realigning the liquid crystals, where the field thereof has a significant component parallel to the liquid-crystal layer, comprising a liquid-crystalline medium having negative dielectric anisotropy, where the medium comprises at least one mesogenic compound which contains at least four compounds which contain a group of the formula A
Abstract:
A cleaning apparatus and a cleaning method effectively clean the entire surface of a substrate to be cleaned by uniformly irradiating ultrasonic waves to the substrate. Ultrasonic waves generated by an ultrasonic oscillator provided on the side wall of an outer tank are transmitted through an ultrasonic wave transmission medium provided between the outer tank and an inner tank, for example, water, and are irradiated on a substrate to be cleaned, for example, a semiconductor wafer, in the inner tank through a cleaning chemical in the inner tank. By irradiating the ultrasonic waves from the side of the cleaning apparatus, a support base blocks the least amount of ultrasonic waves from reaching the substrate. This is effective to uniformly clean the substrate.